References
- Adafruit 2019, Adafruit TSL2591 High Dynamic Range Digital Light, Adafruit Learning System.
- Adams, CA, Blumenthal, A, Fernández-Juricic, E, Bayne, E & St. Clair, CC 2019, ‘Effect of anthropogenic light on bird movement, habitat selection, and distribution: A systematic map protocol’, Environmental Evidence, vol. 8, no. 13.
- Bara, S, Lima, RC & Zamorano, J 2019, ‘Monitoring longterm trends in the Anthropogenic Night Sky Brightness’, Sustainability, vol. 11.
- Cavazzani, S, Cavazzani, S, Ortolani, S, Bertolo, A, Binotto, R, Fiorentin, P, Carraro, G, Saviane, I & Zitelli, V 2020, ‘Sky quality meter and satellite correlation for night cloud-cover analysis at astronomical sites’, Monthly Notices of the Royal Astronomical Society, vol. 493(2), pp. 2463–2471.
- Cinzano, P, Falchi, F, Elvidge, CD & Baugh, KE 2000, ‘The artificial night sky brightness mapped from DMSP satellite Operational Linescan System measurements’, Monthly Notices of the Royal Astronomical Society, vol. 318, pp. 641–657.
- Elvidge, CD, Baugh, KE, Zhizhin, M & Hsu, FC 2013, ‘Why VIIRS data are superior to DMSP for mapping nighttime lights’, Proceedings of the Asia-Pacific Advanced Network, vol. 35.
- Falchi, F, Cinzano, P, Duriscoe, D, Kyba, C.C.M, Elvidge, CD, Baugh, K, Portnov, BA, Rybnikova, NA Furgoni, R 2016, ‘The new world atlas of artificial night sky brightness’, Science advances, vol. 2, no. 6, e1600377.
- Garcia-Saenz, A, Sánchez de Miguel, A, Espinosa, A, Crespo, A, Aragonés, N, Llorca, J, Amiano, P, Martín, V, Guevara, M, Capelo, R, Tardón, A, Peiró, R, Jiménez-Moleón, J, Roca Barcelo, A, Perez-Gomez, B, Dierssen-Sotos, T, Fernández, T, Moreno-Iribas, C, Moreno, V & Kogevinas, M, 2018, ‘Evaluating the association between artificial light-at-night exposure and breast and prostate cancer risk in Spain (mcc-spain study)’, Environmental Health Perspectives, vol. 126.
- Globe at Night. Available from: <https://app.globeatnight.org/map>. [18 May 2023].
- Hänel A, Posch, T, Ribas, S.J, Aubé, M, Duriscoe, D, Jechow, A, Kollath, Z, Lolkema, DE, Moore, C, Schmidt, N, Spoelstra, H, Wuchterl, G & Kyba, CCM 2017, ‘Measuring night sky brightness: Methods and challenges’, Journal of Quantitative Spectroscopy and Radiative Transfer vol. 205, pp. 278–290.
- International Dark-Sky Association, The International Dark Sky Places conservation program recognizes and promotes excellent stewardship of the night sky. Available from: <https://www.darksky.org/our-work/conservation/idsp/> [29 December 2022].
- Jechow, A & Hölker, F 2019, ‘How dark is a river? Artificial light at night in aquatic systems and the need for comprehensive night-time light measurements’, WIREs Water, vol. 6(6), e1388.
- Jechow, A, Kyba, C.C.M, Kolláth, Z, Lerner, A, Hänel, A, Shashar, N & Hölker, F 2017, ‘Measuring light pollution with fisheye lens imagery from a moving boat, a proof of concept’, International Journal of Sustainable Lighting, vol. 36, pp. 15–25.
- Karpińska, D & Kunz, M 2019, ‘Light pollution in the night sky of Toruń in the summer season’, Bulletin of Geography. Physical Geography Series, vol. 17, pp. 91–100.
- Karpińska, D & Kunz, M 2020a, ‘Analysis of light pollution of the night sky in Toruń (Poland)’, Civil and Environmental Engineering Reports, pp. 155–172.
- Karpińska D & Kunz M. 2020b, ‘Ochrona nocnego nieba - wyzwanie dla Rezerwatu Biosfery Bory Tucholskie’ [‘Protection of the night sky – a challenge for the Tuchola Forest Biosphere Reserve’] in ‘Rola i funkcjonowanie parków krajobrazowych w rezerwatach biosfery’ [The role and functioning of landscape parks in biosphere reserves’], ed. Kunz Mieczysław, pp. 329–346, Toruń, Wydawnictwo Naukowe Uniwersytetu Mikołaja Kopernika.
- Karpińska, D & Kunz, M 2021, ‘Analysis of the visibility and signal strength of the LoRaWAN network in an urbanized area – a case study of the Bielany campus at the Nicolaus Copernicus University in Toruń’, Bulletin of Geography. Socio-Economic Series, vol. 54, pp. 137–149.
- Karpińska, D & Kunz, M 2022, ‘Device for automatic measurement of light pollution of the night sky’, Scientific Reports, vol. 12. https://doi.org/10.1038/s41598-022-20624-7.
- Karpińska, D & Kunz, M 2023a, ‘Relationship between the surface brightness of the night sky and meteorological conditions’, Journal of Quantitative Spectroscopy and Radiative Transfer, vol. 306.
- Karpińska, D & Kunz, M 2023b, ‘Vertical variability of night sky brightness in urbanised areas’, Quaestiones Geographicae, vol. 42(1), pp. 5–14.
- Kocifaj, M & Bará, S 2020, ‘Nighttime monitoring of the aerosol content of the lower atmosphere by differential photometry of the anthropogenic skyglow’, Monthly Notices of the Royal Astronomical Society: Letters, vol. 500, 47–51.
- Kolláth, Z 2010, ‘Measuring and modelling light pollution at the Zselic Starry Sky Park’, Journal of Physics Conference Series, vol. 218(1).
- Kołomański, S 2015, ‘Zanieczyszczenie światłem i ciemność’ [‘Light pollution and darkness’] in Przejdź na ciemną stronę nocy. Środowiskowe i społeczne skutki zanieczyszczenia światłem [Go to the dark side of the night. Environmental and social effects of light pollution], ed. MR Wiśniewska K Tomasik, pp. 29–46, Wyd. UW. Warszawa.
- Lacoeuilhe, A, Machon, N, Julien, JF, Le Bocq, A, & Kerbiriou, C 2014, ‘The influence of low intensities of light pollution on bat communities in a semi-natural context’, PLoS One vol. 9(10), e103042.
- Levin, N, Kyba, CCM, Zhang, Q, Sánchez de Miguel, A, Román, MO, Li, X, Portnov, BA, Molthan, AL, Jechow, A, Miller, SD, Wang, Z, Shrestha, RM & Elvidge, CD,2020, ‘Remote sensing of night lights: A review and an outlook for the future’, Remote Sensing of Environment, vol. 237.
- Linares, H, Masana, E, Ribas, SJ, Aubé, M, Simoneau, A & Bará, S 2020, ‘Night sky brightness simulation over Montsec protected area’, Journal of Quantitative Spectroscopy and Radiative Transfer, vol 249.
- Longcore, T, Rich, C & DelBusso, L 2017, ‘Artificial Night Lighting and Protected Lands’, Natural Resource Report NPS/NRSS/NSNS/NRR–2017/1493.
- Macgregor, CJ, Evans, DM, Fox, R & Pocock, MJO 2017, ‘The dark side of street lighting: Impacts on moths and evidence for the disruption of nocturnal pollen transport’, Global Change Biology, vol. 23(2), pp. 697–707.
- Mander, S, Alam, F, Lovreglio, R & Ooi, M 2023, ‘How to measure light pollution – A systematic review of methods and applications’, Sustainable Cities and Society, vol. 92.
- Mikhaylov, K, Stusek, M, Masek, P, Petrov, V, Petäjäjärvi, J, Andreev, S, Pokorny, J, Hosek, J, Pouttu, A & Koucheryavy, Y 2018, ‘Multi-RAT LPWAN in Smart Cities: Trial of LoRaWAN and NB-IoT Integration’, IEEE International Conference on Communications (ICC), pp. 1–6.
- Ministry of the Environment of the Czech Republic, 2022, ‘Light pollution reduction measures in Europe’, Working paper for international workshop “Light Pollution 2022”, during the Czech Presidency of the Council of the European Union.
- Pun, CSJ, So, CW, Leung, WY & Wong, CF 2014, ‘Contributions of artificial lighting sources on light pollution in Hong Kong measured through a night sky brightness monitoring network’, Journal of Quantitative Spectroscopy and Radiative Transfer, vol. 139, pp. 90–108.
- Ribas, S, Torra, J, Figueras, F, Paricio, S & Canal-Domingo, R 2016, ‘How clouds are amplifying (or not) the effects of ALAN’, International Journal of Sustainable Lighting, vol. 18.
- Semtech Corporation, 2015, AN1200.22 LoRa™ Modulation Basics, Wireless Sensing and Timing Products, Application Note.
- Szlachetko, K (ed.) 2022, Memorandum w sprawie ustanowienia prawnych podstaw zrównoważonej polityki oświetlenia zewnętrznego. [Memorandum on establishing the legal basis for a sustainable outdoor lighting policy] Instytut Metropolitarny, Gdańsk.
- Ściężor, T 2020, ‘The impact of clouds on the brightness of the night sky’, Journal of Quantum Spectroscopy and Radiative Transfer, vol. 247.
- Ściężor, T 2021, ‘Effect of street lighting on the urban and rural night-time radiance and the brightness of the night sky’, Remote Sensetion, vol. 13(9).
- Ściężor, T, Kubala, M, Kaszowski, W & Dworak, TZ,2010, Zanieczyszczenie świetlne nocnego nieba w obszarze aglomeracji krakowskiej. Analiza pomiarów sztucznej poświaty niebieskiej. [Light pollution of the night sky in the area of the Kraków agglomeration. Analysis of artificial blueglow measurements]. Wyd. Politechniki Krakowskiej. Kraków.
- Zamorano, J, García, C, Tapia, C, de Miguel, AS, Pascual, S, Gallego, J 2016, ‘Stars4all night sky brightness photometer’, International Journal of Sustainable Lighting, vol. 18, pp. 49–54.
- Zhang, C, Pei, Y, Li, J, Qin, Q & Yue, J 2019, ‘Application of Luojia 1-01 Nighttime Images for Detecting the Light Changes for the 2019 Spring Festival in Western Cities’, Remote Sensing vol. 12, pp. 14–16.